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首页> 外文期刊>Structural health monitoring >On-site non-invasive condition assessment for cement mortar-lined metallic pipelines by time-domain fluid transient analysis
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On-site non-invasive condition assessment for cement mortar-lined metallic pipelines by time-domain fluid transient analysis

机译:时域流体瞬态分析对水泥砂浆衬里金属管道进行现场非侵入性状态评估

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摘要

Pipeline condition assessment is essential for targeted and cost-effective maintenance of aging water transmission and distribution systems. This article proposes a technique for fast and non-invasive assessment of the wall condition of cement mortar-lined metallic pipelines using fluid transient pressure waves (water hammer waves). A step transient pressure wave can be generated by shutting off a side-discharge valve in a pressurised pipeline. The wave propagates along the pipe and reflections occur when it encounters sections of pipe with changes in wall thickness. The wave reflections can be measured by pressure transducers as they are indicative of the location and severity of the wall deterioration. A numerical analysis is conducted to obtain the relationship between the degree of change in wall thickness in a cement mortar-lined pipe and the size of the corresponding pressure wave reflection. As a result, look-up charts are generated for any specific cement mortar-lined pipeline to map this relationship. The wall thickness of a deteriorated or distinct section can be determined directly and quickly from the charts using the size of the reflected wave, thus facilitating on-site pipeline condition assessment. The validity of this time-domain pipeline condition assessment technique is verified by numerical simulations and a case study using the field data measured in a mild steel cement mortar-lined water main in South Australia. The condition of the pipe as assessed by the proposed technique is generally consistent with ultrasonic measurements.
机译:管道状况评估对于有针对性且经济高效地维护老化的输水和分配系统至关重要。本文提出了一种使用流体瞬态压力波(水锤波)快速无创地评估衬砌水泥砂浆金属管道壁状况的技术。通过关闭加压管道中的侧排阀可以产生阶跃瞬态压力波。波浪沿管道传播,遇到壁厚变化的管道时会发生反射。可以通过压力传感器测量波反射,因为它们表示壁变质的位置和严重程度。进行数值分析以获得衬砌水泥砂浆管的壁厚的变化程度与相应压力波反射的大小之间的关系。结果,将为任何特定的水泥砂浆衬里管道生成查找表以映射此关系。可以使用反射波的大小从图表中直接,快速地确定劣化或截然不同的部分的壁厚,从而便于现场进行管道状况评估。通过数值模拟和案例研究,使用在南澳大利亚州的软钢水泥砂浆衬砌的水管中测得的现场数据,验证了这种时域管道状况评估技术的有效性。通过提出的技术评估的管道状况通常与超声测量结果一致。

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